Literature DB >> 19141113

Functional role of fumarate site Glu59 involved in allosteric regulation and subunit-subunit interaction of human mitochondrial NAD(P)+-dependent malic enzyme.

Ju-Yi Hsieh1, Yu-Hsiu Chiang, Kuan-Yu Chang, Hui-Chih Hung.   

Abstract

Here we report on the role of Glu59 in the fumarate-mediated allosteric regulation of the human mitochondrial NAD(P)+-dependent malic enzyme (m-NAD-ME). In the present study, Glu59 was substituted by Asp, Gln or Leu. Our kinetic data strongly indicated that the charge properties of this residue significantly affect the allosteric activation of the enzyme. The E59L enzyme shows nonallosteric kinetics and the E59Q enzyme displays a much higher threshold in enzyme activation with elevated activation constants, K(A,Fum) and alphaK(A,Fum). The E59D enzyme, although retaining the allosteric property, is quite different from the wild-type in enzyme activation. The K(A,Fum) and alphaK(A,Fum) of E59D are also much greater than those of the wild-type, indicating that not only the negative charge of this residue but also the group specificity and side chain interactions are important for fumarate binding. Analytical ultracentrifugation analysis shows that both the wild-type and E59Q enzymes exist as a dimer-tetramer equilibrium. In contrast to the E59Q mutant, the E59D mutant displays predominantly a dimer form, indicating that the quaternary stability in the dimer interface is changed by shortening one carbon side chain of Glu59 to Asp59. The E59L enzyme also shows a dimer-tetramer model similar to that of the wild-type, but it displays more dimers as well as monomers and polymers. Malate cooperativity is not significantly notable in the E59 mutant enzymes, suggesting that the cooperativity might be related to the molecular geometry of the fumarate-binding site. Glu59 can precisely maintain the geometric specificity for the substrate cooperativity. According to the sequence alignment analysis and our experimental data, we suggest that charge effect and geometric specificity are both critical factors in enzyme regulation. Glu59 discriminates human m-NAD-ME from mitochondrial NADP+-dependent malic enzyme and cytosolic NADP+-dependent malic enzyme in fumarate activation and malate cooperativity.

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Year:  2009        PMID: 19141113     DOI: 10.1111/j.1742-4658.2008.06834.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  5 in total

1.  Fumarate and cytosolic pH as modulators of the synthesis or consumption of C(4) organic acids through NADP-malic enzyme in Arabidopsis thaliana.

Authors:  Cintia Lucía Arias; Carlos Santiago Andreo; María Fabiana Drincovich; Mariel Claudia Gerrard Wheeler
Journal:  Plant Mol Biol       Date:  2012-12-16       Impact factor: 4.076

2.  A small-molecule inhibitor suppresses the tumor-associated mitochondrial NAD(P)+-dependent malic enzyme (ME2) and induces cellular senescence.

Authors:  Ju-Yi Hsieh; Shao-Yu Li; Wen-Chen Tsai; Jyung-Hurng Liu; Chih-Li Lin; Guang-Yaw Liu; Hui-Chih Hung
Journal:  Oncotarget       Date:  2015-08-21

3.  Single nucleotide variants lead to dysregulation of the human mitochondrial NAD(P)+-dependent malic enzyme.

Authors:  Ju-Yi Hsieh; Hao-Ping Yang; Sunil Kumar Tewary; Hui-Chen Cheng; Yi-Liang Liu; Shih-Chieh Tai; Wei-Lin Chen; Chien-Hui Hsu; Ting-Jhen Huang; Chuan-Jung Chou; Yu-Nan Huang; Ching-Tien Peng; Meng-Chiao Ho; Guang-Yaw Liu; Hui-Chih Hung
Journal:  iScience       Date:  2021-01-13

4.  Structural insights into the allosteric site of Arabidopsis NADP-malic enzyme 2: role of the second sphere residues in the regulatory signal transmission.

Authors:  Mariel Claudia Gerrard Wheeler; Cintia Lucía Arias; Juliana da Fonseca Rezende E Mello; Nuria Cirauqui Diaz; Carlos Rangel Rodrigues; María Fabiana Drincovich; Alessandra Mendonça Teles de Souza; Clarisa Ester Alvarez
Journal:  Plant Mol Biol       Date:  2021-07-31       Impact factor: 4.076

5.  Fumarate analogs act as allosteric inhibitors of the human mitochondrial NAD(P)+-dependent malic enzyme.

Authors:  Ju-Yi Hsieh; Jyung-Hurng Liu; Pai-Chun Yang; Chi-Li Lin; Guang-Yaw Liu; Hui-Chih Hung
Journal:  PLoS One       Date:  2014-06-09       Impact factor: 3.240

  5 in total

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